Valley current filtering and reversal by parallel side contacted armchair nanotubes

Abstract

The intertube conductance G of the parallel side contacted armchair nanotubes is calculated by Landauer's formula as a function of the Fermi level E. When the intertube difference in the dope strength is large enough, a resonant peak dominant over the others appears in the E-G curve. The overlap length and the interlayer configuration do not influence the resonant energy. The intervalley transmission at the resonant peak works as a reverser and a filter of the valley current.

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